Ehlers R U
Institute for Phytopathology, Department of Biotechnology and Biological Control, Christian-Albrechts-University, Raisdorf, Germany.
Appl Microbiol Biotechnol. 2001 Sep;56(5-6):623-33. doi: 10.1007/s002530100711.
Entomopathogenic nematodes of the genera Heterorhabditis and Steinernema are commercially used to control pest insects. They are symbiotically associated with bacteria of the genera Photorhabdus and Xenorhabdus, respectively, which are the major food source for the nematodes. The biology of the nematode-bacterium complex is described, a historical review of the development of in vitro cultivation techniques is given and the current use in agriculture is summarised. Cultures of the complex are pre-incubated with the symbiotic bacteria before the nematodes are inoculated. Whereas the inoculum preparation and preservation of bacterial stocks follow standard rules, nematodes need special treatment. Media development is mainly directed towards cost reduction, as the bacteria are able to metabolise a variety of protein sources to provide optimal conditions for nematode reproduction. The process technology is described, discussing the influence of bioreactor design and process parameters required to obtain high nematode yields. As two organisms are grown in one vessel and one of them is a multicellular organism, the population dynamics and symbiotic interactions need to be understood in order to improve process management. Major problems can originate from the delayed or slow development of the nematode inoculum and from phase variants of the symbiotic bacteria that have negative effects on nematode development and reproduction. Recent scientific progress has helped to understand the biological and technical parameters that influence the process, thus enabling transfer to an industrial scale. As a consequence, costs for nematode-based products could be significantly reduced.
异小杆线虫属和斯氏线虫属的昆虫病原线虫被商业用于防治害虫。它们分别与发光杆菌属和嗜线虫致病杆菌属的细菌共生,这些细菌是线虫的主要食物来源。本文描述了线虫 - 细菌复合体的生物学特性,回顾了体外培养技术发展的历史,并总结了其目前在农业中的应用。在接种线虫之前,将复合体的培养物与共生细菌进行预培养。虽然接种物的制备和细菌菌株的保存遵循标准规则,但线虫需要特殊处理。培养基的开发主要致力于降低成本,因为细菌能够代谢多种蛋白质来源,为线虫繁殖提供最佳条件。本文描述了工艺技术,讨论了生物反应器设计和获得高线虫产量所需的工艺参数的影响。由于两种生物体在一个容器中生长,其中一种是多细胞生物体,因此需要了解种群动态和共生相互作用,以改善工艺管理。主要问题可能源于线虫接种物的发育延迟或缓慢,以及共生细菌的相变变体对线虫发育和繁殖产生负面影响。最近的科学进展有助于理解影响该过程的生物学和技术参数,从而能够将其扩大到工业规模。因此,基于线虫的产品成本可以显著降低。